Advancements in Photovoltaic Cell Materials: Silicon, Organic, and Perovskite Solar Cells
Достижения в области материалов для фотоэлектрических элементов: кремниевые, органические и перовскитные солнечные элементы
2024-03-01
SCID: 54.1/zx79hyuu
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material stabilityorganic photovoltaic cellsperovskite solar cellsphotovoltaic materialssilicon-based solar cells
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Abstract (AI)
The evolution of photovoltaic cells is intrinsically linked to advancements in the materials from which they are fabricated. This review paper provides an in-depth analysis of the latest developments in silicon-based, organic, and perovskite solar cells, which are at the forefront of photovoltaic research. We scrutinize the unique characteristics, advantages, and limitations of each material class, emphasizing their contributions to efficiency, stability, and commercial viability. Silicon-based cells are explored for their enduring relevance and recent innovations in crystalline structures. Organic photovoltaic cells are examined for their flexibility and potential for low-cost production, while perovskites are highlighted for their remarkable efficiency gains and ease of fabrication. The paper also addresses the challenges of material stability, scalability, and environmental impact, offering a balanced perspective on the current state and future potential of these material technologies.
Key Findings
1
Material stability, scalability, and environmental impact remain major challenges for photovoltaic technologies.
2
Organic photovoltaics offer flexibility and potential for low-cost manufacturing.
3
Perovskite solar cells have achieved remarkable efficiency gains and are relatively easy to fabricate.
4
Silicon solar cells remain commercially relevant, supported by innovations in crystalline structures.
5
The review analyzes recent advances in silicon-based, organic, and perovskite photovoltaic cell materials.
Research Object
Silicon-based, organic, and perovskite photovoltaic cells
Research Subject
Material-specific characteristics, advantages, limitations, and technological potential regarding efficiency, stability, scalability, commercial viability, and environmental impact
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Publication Date
2024-03-01
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